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Bipolar Transistors (BJT)

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KSA1015OBU
Rochester Electronics
PNP 100nA 50V 150mA TO-92-3 Through hole mounting
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2427+ $0.1248
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Ext. Price: $302.88
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KSA1201OTF
Rochester Electronics
PNP 100nA 120V 800mA SOT-89-3 SMD mount
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1820+ $0.1664
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2SC3068-AA
Rochester Electronics
TRANS NPN 25V 0.2A 3-NP
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3643+ $0.0832
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KSA1182YMTF
Rochester Electronics
PNP 100nA 30V 500mA SOT-23-3 SMD mount
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7267+ $0.0416
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x $0.0416
Ext. Price: $302.30
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2SA1773E-TL-E
Rochester Electronics
HIGH VOLTAGE DRIVER APPLICATIONS
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429+ $0.728
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FJPF13007TU
Rochester Electronics
NPN 400V 8A TO-220F Through hole mounting
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781+ $0.3952
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Ext. Price: $308.65
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FJN4305RTA
Rochester Electronics
PNP - Pre-Biased 100nA 50V 100mA TO-92-3 Through hole mounting
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7267+ $0.0416
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BC858CLT3
Rochester Electronics
TRANS PNP 30V 0.1A SOT23-3
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5453+ $0.0624
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PHPT60610PYX
Rochester Electronics
PNP 100nA 60V 10A SMD mount
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1040+ $0.3016
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EMG2DXV5T5G
Rochester Electronics
2 NPN - Pre-Biased (Dual) 500nA 50V 100mA SOT-553 SMD mount
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3177+ $0.0936
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FJY3015R
Rochester Electronics
NPN - Pre-Biased 100nA 50V 100mA SOT-523F SMD mount
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9458+ $0.0312
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Ext. Price: $295.08
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BC549CBU
Rochester Electronics
NPN 15nA 30V 100mA TO-92-3 Through hole mounting
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9458+ $0.0312
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KSE13003-AS
Rochester Electronics
TRANS NPN 400V 1.5A TO-126-3
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MMBT4124LT1
Rochester Electronics
NPN 50nA 25V 200mA SOT-23-3,TO-236 SMD mount
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9458+ $0.0312
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2SA608NG-NPA-AT
Rochester Electronics
PNP 100nA 50V 150mA TO-226,TO-226AA,TO-92 Through hole mounting
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5453+ $0.0624
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2SA1772E-TL-E
Rochester Electronics
BIP PNP 1A 400V
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560+ $0.5616
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2SC4272F-TD-E
Rochester Electronics
BIP NPN 1A 45V
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683+ $0.4576
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BC307CZL1
Rochester Electronics
TRANS PNP 45V 0.1A TO92
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9458+ $0.0312
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2SA1707S-AN
Rochester Electronics
PNP 1μA 50V 3A NMP-3 Through hole mounting
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1457+ $0.2184
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BCX52-16E6327
Rochester Electronics
TRANS 60V 1A PG-SOT89-4-2
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BFP182WE6327
Rochester Electronics
NPN 12V 35mA SMD mount
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2837+ $0.1144
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Ext. Price: $324.55
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2SA1507T
Rochester Electronics
PNP 1μA 160V 1.5A TO-126ML,TO-225-3 Through hole mounting
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303+ $1.0296
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Ext. Price: $311.96
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BCX52E6327HTSA1
Rochester Electronics
PNP 100nA 60V 1A SOT89 SMD mount
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2837+ $0.1144
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x $0.1144
Ext. Price: $324.55
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2SC945A(0)-T-A
Rochester Electronics
SMALL SIGNAL BIPOLAR TRANSTR NPN
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226+ $1.3832
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2SC3735-T1B-A
Rochester Electronics
TRANS NPN 15V 0.2A SC-59
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Ship Date: 7-12 working days
1664+ $0.1872
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x $0.1872
Ext. Price: $311.50
MOQ: 1664
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SPQ: 1

Bipolar Transistors (BJT)

BJT stands for Bipolar Junction Transistor, a crucial component in electronic circuits. Here's a concise introduction in English:

Definition:
A Bipolar Junction Transistor (BJT) is a semiconductor device used to amplify or switch electronic signals and electrical power. It is composed of three layers of semiconductor material: an emitter, a base, and a collector. The emitter and collector are doped differently to create a PNP (positive-negative-positive) or NPN (negative-positive-negative) configuration.

Function:
BJTs function by allowing a small current to control a larger current flow. They operate in one of three modes: active, saturation, or cutoff. In the active mode, the base-emitter junction is forward-biased, and the base-collector junction is reverse-biased, allowing current to flow from emitter to collector. In saturation, both junctions are forward-biased, and the transistor acts as a closed switch. In cutoff, both junctions are reverse-biased, and no current flows.

Applications:
BJTs are used in a wide range of applications, including:
1. Amplifiers: They amplify weak signals in audio systems, radio receivers, and other electronic devices.
2. Switches: They can be used as digital switches in computers and other digital systems.
3. Voltage regulators: They help maintain a stable voltage in power supplies.
4. Motor controls: They are used in the control circuits of electric motors.

Selection Criteria:
When selecting a BJT, consider the following:
1. Current Gain (hFE): The higher the gain, the more current can be controlled with a given input current.
2. Power Rating: Ensure the BJT can handle the power levels required for the application.
3. Operating Voltage: Choose a BJT with a suitable voltage range for the circuit.
4. Frequency Response: For high-frequency applications, select a BJT with a high cutoff frequency.
5. Physical Size and Packaging: Consider the physical dimensions and the type of package that fits the design.
6. Temperature Range: Ensure the BJT can operate within the temperature range of the application.
7. Cost: Factor in the cost-effectiveness of the BJT for the intended use.

BJTs are fundamental to the operation of many electronic devices, and their selection is critical for the performance and reliability of the system.
Please refer to the product rule book for details.